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Deposition of transparent and flexible nanolayer barrier on standard coating materials for photovoltaic devices

机译:在光伏器件的标准涂层材料上沉积透明且柔性的纳米层屏障

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摘要

Hydrophobic layers are generated and chemisorbed onto standard coating materials for photovoltaic (PV) devices in order to improve their barrier properties against the atmospheric degradation agents and achieve a higher lifetime for the coated devices. The hydrophobic layers are deposited on PET-SiOx substrates using two differentmolecules (alkylsilanes and fluoroalkylsilanes) as precursors. High liquid barrier properties are achieved for the fluoroalkylsilane coated PET-SiOx, best results being average water contact angle N130° and average oil contact angle N90°. A chemical mechanism hypothesis is provided in order to explain the different reactive behavior observed for the PET-SiOx samples with alkylsilanes and fluoroalkylsilanes, respectively. Moreover, the oxygen barrier properties are significantly improved by the fluoroalkylsilane layer deposited in ethanol, that leads to a 70% reduction of the Oxygen Transmission Rate (OTR) compared to that of the uncoated PET-SiOx substrate.
机译:产生疏水层并将其化学吸附到光伏(PV)装置的标准涂层材料上,以提高其对大气降解剂的阻隔性能,并为涂层装置实现更长的使用寿命。使用两种不同的分子(烷基硅烷和氟代烷基硅烷)作为前体,将疏水层沉积在PET-SiOx基材上。对于氟代烷基硅烷涂覆的PET-SiOx,可以获得高的液体阻隔性能,最好的结果是平均水接触角N130°和平均油接触角N90°。提供化学机理假设是为了解释分别用烷基硅烷和氟代烷基硅烷对PET-SiOx样品观察到的不同反应行为。此外,通过沉积在乙醇中的氟代烷基硅烷层,阻氧性能得到了显着改善,与未涂覆的PET-SiOx基材相比,它的透氧率(OTR)降低了70%。

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